Preparation of chitosan, sunflower and nano-iron based core shell and its use in dye removal

Esra Turgut, Azize Alayli, H. Nadaroğlu
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引用次数: 4

Abstract

. Many industries, such as textiles, chemical refineries, leather, plastics and paper, use different dyes in various process steps. At the same time, these industrial sectors are responsible for discharging contaminants that are harmful and toxic to humans and microorganisms by introducing synthetic dyes into wastewater. Of these dyes, methylene blue dye, which is classified as basic dyes, is accepted as a model dye. For this reason, methylene blue dye was selected in the study and its removal from the water was studied. In this study, two efficient biosorbents were developed from chitosan and sunflower waste, an agro-industrial waste and modified using iron nanoparticles. The biosorption efficiency was evaluated for methylene blue (MB) dye removal from aqueous solution under various parameters such as treating agent, solution pH, biosorbent dosage, contact time, initial dye concentration and temperature. We investigated the kinetic properties of dye removal from water for Chitosan-Sunflower (CS), Chitosan-Sunflower-Nanoiron (CSN). the wavelength scanned, the maximum absorbance was determined as 660 nm. For the core shell biosorbents we obtained, we found that the optimum time for removal of MB from wastewater was 60 min. The pH of the best pH was determined as 5 in the studied pH. The most suitable temperature for the experiment was determined as 30°C. SEM-EDAX, TEM, XRD, and FTIR techniques were used to characterize biosorbents produced and modified in the experimental stage and to monitor the change of biosorbent after dye removal. The interactions of the paint with the surface used for removal were explained by these techniques. It was calculated that 80% of CS and 88% of CSN removed MB in optimum conditions. Also, the absorption of MB dye onto the surface was investigated by Langmiur and Frendlinch isotherms and it was determined from the results that the removal was more compatible with Langmiur isotherm.
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壳聚糖、葵花籽和纳米铁基核壳的制备及其在染料脱除中的应用
. 许多行业,如纺织、化学精炼厂、皮革、塑料和造纸,在不同的工艺步骤中使用不同的染料。与此同时,这些工业部门通过向废水中引入合成染料而排放对人类和微生物有害和有毒的污染物。在这些染料中,亚甲基蓝染料被归类为碱性染料,被认为是一种模型染料。为此,本研究选择亚甲基蓝染料,并对其从水中去除进行了研究。本研究以壳聚糖和向日葵废弃物为原料,制备了两种高效的生物吸附剂,并对其进行了纳米铁改性。考察了处理剂、溶液pH、生物吸附剂用量、接触时间、初始染料浓度和温度等参数对亚甲基蓝(MB)染料的生物吸附效果。研究了壳聚糖-葵花(CS)、壳聚糖-葵花-纳米铁(CSN)对水中染料的去除动力学性质。扫描波长,最大吸光度为660 nm。对于我们获得的核壳生物吸附剂,我们发现去除废水中MB的最佳时间为60 min,在研究的pH中确定最佳pH为5,实验的最合适温度为30℃。采用SEM-EDAX、TEM、XRD、FTIR等技术对实验阶段制备和改性的生物吸附剂进行表征,并监测生物吸附剂脱染后的变化。这些技术解释了用于去除的涂料与表面的相互作用。经计算,在最佳条件下,CS的去除率为80%,CSN的去除率为88%。通过Langmiur等温线和Frendlinch等温线研究了MB染料在表面的吸附,结果表明,去除过程更符合Langmiur等温线。
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